CERN Accelerating science

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1.
Fiber laser system of 1550 nm femtosecond pulses with configurable properties for the two-photon excitation of transient currents in semiconductor detectors / Almagro-Ruiz, Azahara (Guglielmo Marconi U.) ; Pape, Sebastian (CERN ; Dortmund U.) ; Muñoz-Marco, Héctor (Guglielmo Marconi U.) ; Wiehe, Moritz (CERN ; Freiburg U.) ; Currás, Esteban (CERN) ; Fernández-García, Marcos (CERN ; Cantabria Inst. of Phys.) ; Moll, Michael (CERN) ; Montero, Raúl (Basque U., Bilbao) ; Palomo, Francisco Rogelio (Seville U.) ; Quintana, Cristian (Cantabria Inst. of Phys.) et al.
A fiber laser system emitting ultrashort femtosecond pulses at 1550 nm with configurable properties has been developed as an excitation source for the two-photon absorption transient current technique (TPA-TCT). The modules of the system are designed to provide the optical specifications required at the output for localized characterization of semiconductor radiation detectors: variation of pulse energy between 10 nJ and 10p J, variation of the pulse repetition rate from 8.2 MHz to single shot, and variation of pulse duration between 300 and 600 fs. [...]
2022 - 12 p. - Published in : Appl. Opt. 61 (2022) 9386-9397
2.
Development of a Tabletop Setup for the Transient Current Technique Using Two-Photon Absorption in Silicon Particle Detectors / Wiehe, Moritz (CERN ; Freiburg U.) ; Fernandez Garcia, Marcos (CERN) ; Moll, Michael (CERN) ; Montero, Raul (SGIker Laser Facility (UPV/EHU), Leioa) ; Palomo, F R (Escuela Técnica Superior de Ingenieros, Seville) ; Vila, Ivan (Cantabria Inst. of Phys.) ; Munoz-Marco, Hector (FYLA LASER, Valencia) ; Otgon, Viorel (FYLA LASER, Valencia) ; Perez-Millan, Pere (FYLA LASER, Valencia)
The transient current technique (TCT) is widely used in the field of silicon particle detector development. So far, only laser wavelengths with a photon energy larger than or similar to the silicon bandgap (single photon absorption) were used. [...]
2021 - 9 p. - Published in : IEEE Trans. Nucl. Sci. 68 (2021) 220-228 Fulltext: PDF;

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